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Dynamic Gene Regulatory Networks Drive Hematopoietic Specification and Differentiation

Metazoan development involves the successive activation and silencing of specific gene expression programs and is driven by tissue-specific transcription factors programming the chromatin landscape. To understand how this process executes an entire developmental pathway, we generated global gene exp...

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Autores principales: Goode, Debbie K., Obier, Nadine, Vijayabaskar, M.S., Lie-A-Ling, Michael, Lilly, Andrew J., Hannah, Rebecca, Lichtinger, Monika, Batta, Kiran, Florkowska, Magdalena, Patel, Rahima, Challinor, Mairi, Wallace, Kirstie, Gilmour, Jane, Assi, Salam A., Cauchy, Pierre, Hoogenkamp, Maarten, Westhead, David R., Lacaud, Georges, Kouskoff, Valerie, Göttgens, Berthold, Bonifer, Constanze
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Cell Press 2016
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4780867/
https://www.ncbi.nlm.nih.gov/pubmed/26923725
http://dx.doi.org/10.1016/j.devcel.2016.01.024
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author Goode, Debbie K.
Obier, Nadine
Vijayabaskar, M.S.
Lie-A-Ling, Michael
Lilly, Andrew J.
Hannah, Rebecca
Lichtinger, Monika
Batta, Kiran
Florkowska, Magdalena
Patel, Rahima
Challinor, Mairi
Wallace, Kirstie
Gilmour, Jane
Assi, Salam A.
Cauchy, Pierre
Hoogenkamp, Maarten
Westhead, David R.
Lacaud, Georges
Kouskoff, Valerie
Göttgens, Berthold
Bonifer, Constanze
author_facet Goode, Debbie K.
Obier, Nadine
Vijayabaskar, M.S.
Lie-A-Ling, Michael
Lilly, Andrew J.
Hannah, Rebecca
Lichtinger, Monika
Batta, Kiran
Florkowska, Magdalena
Patel, Rahima
Challinor, Mairi
Wallace, Kirstie
Gilmour, Jane
Assi, Salam A.
Cauchy, Pierre
Hoogenkamp, Maarten
Westhead, David R.
Lacaud, Georges
Kouskoff, Valerie
Göttgens, Berthold
Bonifer, Constanze
author_sort Goode, Debbie K.
collection PubMed
description Metazoan development involves the successive activation and silencing of specific gene expression programs and is driven by tissue-specific transcription factors programming the chromatin landscape. To understand how this process executes an entire developmental pathway, we generated global gene expression, chromatin accessibility, histone modification, and transcription factor binding data from purified embryonic stem cell-derived cells representing six sequential stages of hematopoietic specification and differentiation. Our data reveal the nature of regulatory elements driving differential gene expression and inform how transcription factor binding impacts on promoter activity. We present a dynamic core regulatory network model for hematopoietic specification and demonstrate its utility for the design of reprogramming experiments. Functional studies motivated by our genome-wide data uncovered a stage-specific role for TEAD/YAP factors in mammalian hematopoietic specification. Our study presents a powerful resource for studying hematopoiesis and demonstrates how such data advance our understanding of mammalian development.
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spelling pubmed-47808672016-03-17 Dynamic Gene Regulatory Networks Drive Hematopoietic Specification and Differentiation Goode, Debbie K. Obier, Nadine Vijayabaskar, M.S. Lie-A-Ling, Michael Lilly, Andrew J. Hannah, Rebecca Lichtinger, Monika Batta, Kiran Florkowska, Magdalena Patel, Rahima Challinor, Mairi Wallace, Kirstie Gilmour, Jane Assi, Salam A. Cauchy, Pierre Hoogenkamp, Maarten Westhead, David R. Lacaud, Georges Kouskoff, Valerie Göttgens, Berthold Bonifer, Constanze Dev Cell Resource Metazoan development involves the successive activation and silencing of specific gene expression programs and is driven by tissue-specific transcription factors programming the chromatin landscape. To understand how this process executes an entire developmental pathway, we generated global gene expression, chromatin accessibility, histone modification, and transcription factor binding data from purified embryonic stem cell-derived cells representing six sequential stages of hematopoietic specification and differentiation. Our data reveal the nature of regulatory elements driving differential gene expression and inform how transcription factor binding impacts on promoter activity. We present a dynamic core regulatory network model for hematopoietic specification and demonstrate its utility for the design of reprogramming experiments. Functional studies motivated by our genome-wide data uncovered a stage-specific role for TEAD/YAP factors in mammalian hematopoietic specification. Our study presents a powerful resource for studying hematopoiesis and demonstrates how such data advance our understanding of mammalian development. Cell Press 2016-03-07 /pmc/articles/PMC4780867/ /pubmed/26923725 http://dx.doi.org/10.1016/j.devcel.2016.01.024 Text en © 2016 The Authors http://creativecommons.org/licenses/by/4.0/ This is an open access article under the CC BY license (http://creativecommons.org/licenses/by/4.0/).
spellingShingle Resource
Goode, Debbie K.
Obier, Nadine
Vijayabaskar, M.S.
Lie-A-Ling, Michael
Lilly, Andrew J.
Hannah, Rebecca
Lichtinger, Monika
Batta, Kiran
Florkowska, Magdalena
Patel, Rahima
Challinor, Mairi
Wallace, Kirstie
Gilmour, Jane
Assi, Salam A.
Cauchy, Pierre
Hoogenkamp, Maarten
Westhead, David R.
Lacaud, Georges
Kouskoff, Valerie
Göttgens, Berthold
Bonifer, Constanze
Dynamic Gene Regulatory Networks Drive Hematopoietic Specification and Differentiation
title Dynamic Gene Regulatory Networks Drive Hematopoietic Specification and Differentiation
title_full Dynamic Gene Regulatory Networks Drive Hematopoietic Specification and Differentiation
title_fullStr Dynamic Gene Regulatory Networks Drive Hematopoietic Specification and Differentiation
title_full_unstemmed Dynamic Gene Regulatory Networks Drive Hematopoietic Specification and Differentiation
title_short Dynamic Gene Regulatory Networks Drive Hematopoietic Specification and Differentiation
title_sort dynamic gene regulatory networks drive hematopoietic specification and differentiation
topic Resource
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4780867/
https://www.ncbi.nlm.nih.gov/pubmed/26923725
http://dx.doi.org/10.1016/j.devcel.2016.01.024
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